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Biomedical subjects

S Banerjee

Publications and source records attributed to S Banerjee.

At least 487 records · Page 27Linked to original sources

Neurological manifestations associated with bronchogenic carcinoma.

Neurological manifestations of bronchogenic carcinoma were studied in 50 cases, 42% of whom showed neurological abnormalities with 6% having more than one type. Recurrent laryngeal nerve paralysis (20%) was the commonest, phrenic nerve paralysis (2%), paraneoplastic syndrome (12%), Pancoast's syndrome (10%) and metastatic involvement of central nervous system (4%) were other neurological manifestations. No evidence of encephalitis, motor neurone disease, myelopathy, Eaton-Lambert syndrome, myositis and drug-induced peripheral neuropathy was found in this study.

Brain Neoplasms↗

Seasonal variation of IgE and IgG antibody of some atopic patients against the pollen grains of selected plant species.

Several steps were taken to determine the seasonal variation of IgE and IgG antibody against Short Ragweed, Timothy Grass, Tag Alder and White Ash. Extracts of the above pollen grains were separated into their allergen components using SDS-gel electrophoresis and transblotted to nitrocellulose membrane (Western blotting) and probed with sera from atopic patients in every month (August 1987-July 1988). The IgE and IgG antibody against the specific-allergens were detected by double antibody immunoenzyme assay. The percentage of binding was determined by using a 620 video-densitometer. Results indicate that there was no reasonable IgE antibody before the pollination season, but IgEAb appeared after the season and was detectable for several months. Negligible amounts of IgGAb were observed.

Humans↗

MHC class II A alpha and E alpha molecules determine the clonal deletion of V beta 6+ T cells. Studies with recombinant and transgenic mice.

Interactions between MHC class II genes and minor lymphocyte stimulating (Mls) associated products are responsible for clonally deleting self-reactive T cells in mice. Here we demonstrate the role of the intact I-A and I-E molecules as well as the individual A alpha and E alpha chains in the deletion of cells bearing the V beta 6 TCR. DBA/1 (H-2q, Mls-1a) mice were crossed with various inbred congenic, recombinant, and transgenic strains and the F1's were screened for V beta 6 expression. All I-E+ strains were fully permissive in deleting V beta 6+ T cells. I-E- strains expressing I-A b,f,s,k,p permitted only partial deletion, while I-Aq strains showed no deletion. Recombinant I-Aq and I-Af strains which expressed E kappa alpha chain in the absence of E beta chain showed a decrease in V beta 6+ T cells as compared to their H-2q and H-2f counterparts. Furthermore, transgenic mice expressing E kappa alpha Aq beta gene in an H-2q haplotype (E kappa alpha Aq beta?) gave similar results to that of the recombinants in deleting V beta 6 T-cells. The role of the 1-A molecule was also shown by the partial deletion of V beta 6+ T cells in H-2q mice expressing transgenic I-Ak molecules. These results demonstrate that the E alpha chain is important in the deletion of V beta 6 T-cells in Mls-1a mice. The role of A alpha chain is also implied by the permissiveness of E kappa alpha Aq beta but not Aq alpha Aq beta molecules in the deletion of V beta 6+ T cells.

Animals↗

RIII S/J (H-2r). An inbred mouse strain with a massive deletion of T cell receptor V beta genes.

We have identified an inbred strain of mouse, RIII S/J (H-2r), that has the largest known deletion of the TCR V beta genes by screening with mAb and TCR V beta specific probes. Upon screening of PBL with mAb F23.1, which is specific for V beta 8 TCR, RIII S/J was found to be negative. On further screening with mAb KJ 23a, which is specific for V beta 17a TCR, RIII S/J was completely negative. We next tested RIII S/J with mAb 44-22-1, which is specific for V beta 6 TCR, and found it also to be negative. The (B10 X RIII)F1 mice showed a 50% expression of V beta 6 gene, indicating a genomic rather than a clonal deletion. mAb KJ25, detecting V beta 3, was positive in RIII S/J, denoting the downstream boundary for the deletion. Southern blot analysis of liver DNA using TCR V beta-specific probes confirmed the deletion of V beta 8 gene subfamily and V beta 5 gene subfamily, along with V beta 9, V beta 11, V beta 12, and V beta 13 genes similar to the known TCR V beta deletion mutants (SWR, SJL, C57L, and C57Br). In addition, RIII S/J is missing V beta 6, V beta 15, and V beta 17 genes. Our mapping of the deletion indicates that RIII S/J has lost approximately 130 kb of V beta chromosome and with it 13 V beta genes out of the known 21 V beta genes of the TCR. The deletion is marked by the presence of V beta 10 gene upstream and V beta 3 gene downstream.

Animals↗

Influence of complement C5 and V beta T cell receptor mutations on susceptibility to collagen-induced arthritis in mice.

SWR/J mice are resistant to collagen-induced arthritis (CIA) despite having a susceptible H-2q haplotype. We have earlier demonstrated the possible role of the V beta TCR mutation of SWR in the resistance to CIA. To investigate the influence of the C5 deficiency of SWR in this resistance, crosses were made between SWR and A/J (C5 deficient, TCRwild, H-2a), and between SWR and C3H.A (C5 sufficient, TCRwild, H-2a). Upon immunization with bovine type II collagen in adjuvant, there was a similar incidence and severity of arthritis in H-2q-bearing mice in the back-crosses A x (SWR x A) ad C3H.A x (SWR x C3H.A). The absence of hemolytic complement was confirmed in the arthritic A x (SWR x A) back-cross mice by standard SRBC hemolytic assays. In addition C57L (H-2b) mice, which were C5 sufficient but had a V beta TCR deletion mutation similar to SWR, could not complement for CIA susceptibility in H-2q-bearing C57L x (SWR x C57L) back-crosses and in (C57L x SWR)F2 hybrids. These studies show that complement C5 does not play a significant role in CIA susceptibility, and further implicate the V beta TCR mutation in the resistance to CIA in SWR mice.

Animals↗

Identification of T-cell receptor V beta deletion mutant mouse strain AU/ssJ (H-2q) which is resistant to collagen-induced arthritis.

Our laboratory is involved in investigating the role of T-cell receptor (Tcr) in collagen-induced arthritis (CIA). During these studies we found AU/ssJ (H-2q) mice to be resistant to CIA like SWR (H-2q), as compared with other H-2q strains with wild-type Tcr like DBA/1 and B10.Q. Upon screening with monoclonal antibodies F23.1 and KJ23a, AU/ssJ was found to be F23.1 negative (V beta 8 Tcr negative) and KJ23a positive (V beta 17a Tcr positive). Southern blot analysis on liver DNA using specific Tcr-V beta probes confirmed the deletion of V beta 8 gene family and also showed that AU/ssJ mice have deletions of V beta 9, V beta 13, V beta 12, and V beta 11 genes of Tcr. Further, these mice show a restriction fragment length polymorphism pattern with V beta 10, V beta 6, and V beta 17 probes similar to SWR mice as compared with B10 mice. Since SWR and AU/ssJ are from different backgrounds, these studies indicate that specific variable region beta chain genes of Tcr are crucial for susceptibility to CIA in mice. Furthermore, these studies identify an additional inbred strain which has also deleted 50% of its Tcr-V beta genes.

Animals↗

Biodistribution of two 99mTc-cardiac glycosides with end glucose unit: effect of lipophilicity on their relative myocardial accumulation.

In biodistribution experiments with tritium labelled cardiac glycoside it was observed that compounds of low lipophilicity showed a considerably higher affinity towards myocardium with respect to other tissues and organs. A similar trend was also observed with 99mTc-cardiac glycosides except for one compound with glucose residue, which in spite of its lower lipophilicity exhibited an unexpectedly low heart to non-target concentration ratio, thereby indicating a possible influence of carbohydrate residue on biodistribution. To confirm this, in this article we radiolabelled two glucose containing cardiac glycosides (K-strophanthin-beta and K-strophanthoside) with 99mTc and, in biodistribution experiments, less lipophilic 99mTc-K-strophanthoside showed a much better heart to non-target ratio over 99mTc-K-strophanthin-beta. It is thus concluded that, in addition to lipophilicity, the affinity of the carbohydrate residue for non-target organs is also an important consideration in determining the structure-distribution relationship of 99mTc-cardiac glycosides.

Animals↗

Reproduction in the Indian mouse-tailed bat, Rhinopoma hardwickei hardwickei (Chiroptera, Rhinopomatidae).

At and near Agra, in Uttar Pradesh, India, R. h. hardwickei had a strictly defined annual reproductive cycle. Although many females were inseminated during late February to mid April, ovulation was not recorded until 11 March. Progressively more females ovulated and conceived during the following weeks until the end of April and released one ovum from either of the ovaries with nearly equal frequency. A single conceptus was carried in the ipsilateral uterine cornu during each cycle. The gestation period was 95-100 days. Births occurred between the second week of June and the end of July. Lactation lasted at least 20 days. Females attained sexual maturity at an age of 8.5-9.0 months. Males took at least 16-17 months to attain sexual maturity. Females were segregated during lactation; during the rest of the year, males and females lived together.

Animals↗

Stimulation of forward motility of goat cauda epididymal spermatozoa by a serum glycoprotein factor.

Blood sera of humans, rats, goats, and buffalo have been shown to possess a forward motility-stimulating factor (FMSF) that markedly stimulated goat cauda epididymal sperm forward motility, as assayed by a microscopic method in the presence of epididymal plasma (1.2 mg protein/ml) that had sufficient anti-sticking activity to eliminate the possibility of cell-sticking artifacts in motility assays. The specific activity of FMSF was greatest in buffalo blood serum compared to the sera of the other species. Buffalo serum at a concentration as low as 8.5 mg protein/ml induced forward motility in nearly 45% of the cells. The buffalo serum FMSF was heat-stable, nondialyzable, and sensitive to the action of trypsin. Purified proteins--casein, serum albumin, ovalbumin, myoglobin, and beta-lactoglobulin--showed little or relatively low FMSF activity. FMSF is a glycoprotein, as it binds with high affinity to concanavalin A-agarose. A major portion of the serum protein (approx. 70%) did not bind to the affinity matrix, and this unretained serum protein fraction showed little FMSF activity. The FMSF activity of buffalo serum was confirmed by estimating sperm forward motility spectrophotometrically: an objective method of assessing sperm motility.

Animals↗